3 Quantum Optical Phenomena in Nuclear Resonant Scattering
165
4. G.S. Agarwal, Quantum Optics (Cambridge University Press, 2013)
5. S.L. Ruby, Mössbauer experiments without conventional sources. J. Phys. (Paris) Colloq. 35,
C6–209 (1974)
6. R. Röhlsberger, Nuclear Condensed Matter Physics with Synchrotron Radiation. Basic Principles, Methodology and Applications. Number 208 in Springer Tracts in Modern Physics
(Springer, Berlin, Heidelberg, 2004)
7. Kwang-Je Kim, Yuri Shvyd’ko, Sven Reiche, A proposal for an x-ray free-electron laser
oscillator with an energy-recovery linac. Phys. Rev. Lett. 100, 244802 (2008)
8. B.W. Adams et al., Scientific opportunities with an x-ray free-electron laser oscillator.
arXiv:1903.09317 [physics.ins-det] (2019)
9. M.O. Scully, E.S. Fry, C.H. Raymond Ooi, K. Wódkiewicz, Directed spontaneous emission
from an extended ensemble of N atoms: timing is everything. Phys. Rev. Lett. 96, 010501
(2006)
10. J.H. Eberly, Emission of one photon in an electric dipole transition of one among N atoms.
J. Phys. B Atom. Molec. Opt. Phys. 39, S599 (2006)
11. A. Svidzinsky, J.-T. Chang, Cooperative spontaneous emission as a many-body eigenvalue
problem. Phys. Rev. A 77, 043833 (2008)
12. R. Friedberg, J.T. Manassah, Effects of including the counterrotating term and virtual photons
on the eigenfunctions and eigenvalues of a scalar photon collective emission theory. Phys.
Lett. A 372, 2514–2521 (2008)
13. R. Friedberg, J.T. Manassah, Electromagnetic decay modes in a spherical sample of two-level
atoms. Phys. Lett. A 372, 6833–6842 (2008)
14. D. Porras, J.I. Cirac, Collective generation of quantum states of light by entangled atoms.
Phys. Rev. A 78, 053816 (2008)
15. M.O. Scully, A.A. Svidzinsky, The super of superradiance. Science 325, 1510–1511 (2009)
16. M.O. Scully, A.A. Svidzinsky, The effects of the N atom collective Lamb shift on single
photon superradiance. Phys. Lett. A 373, 1283–1286 (2009)
17. L.H. Pedersen, K. Mølmer, Few qubit atom-light interfaces with collective encoding. Phys.
Rev. A 79, 012320 (2009)
18. A.A. Svidzinsky, M.O. Scully, Evolution of collective N atom states in single photon superradiance: effect of virtual Lamb shift processes. Opt. Commun. 282, 2894–2897 (2009)
19. A.A. Svidzinsky, M.O. Scully, On the evolution of N -atom state prepared by absorption of a
single photon. Opt. Commun. 283, 753–757 (2010)
20. R. Friedberg, Refinement of a formula for decay after weak coherent excitation of a sphere.
Annals Phys. 325, 345–358 (2010)
21. A.A. Svidzinsky, J.-T. Chang, M.O. Scully, Cooperative spontaneous emission of n atoms:
many-body eigenstates, the effect of virtual Lamb shift processes, and analogy with radiation
of n classical oscillators. Phys. Rev. A 81, 053821 (2010)
22. P.R. Berman, J.-L. Le Gouët, Phase-matched emission from an optically thin medium following one-photon pulse excitation: Energy considerations. Phys. Rev. A 83, 035804 (2011)
23. A.M. Afanas’ev, Yu. Kagan, Theory of hyperfine structure of the Mössbauer line in paramagnetic substances. Sov. Phys. JETP 18, 1139–1149 (1964)
24. J.P. Hannon, G.T. Trammell, Mössbauer diffraction. I. Quantum theory of gamma-ray and
x-ray optics. Phys. Rev. 169, 315–329 (1968)
25. J.P. Hannon, G.T. Trammell, Mössbauer diffraction. II. Dynamical theory of Mössbauer optics.
Phys. Rev. 186, 306–325 (1969)
26. J.P. Hannon, G.T. Trammell, Coherent γ -ray optics. Hyperfine Interactions 123, 127–274
(1999)
27. R. Röhlsberger, K. Schlage, B. Sahoo, S. Couet, R. Rüffer, Collective Lamb shift in single
photon superradiance. Science 328, 1248 (2010)
28. R. Röhlsberger, H.C. Wille, K. Schlage, B. Sahoo, Electromagnetically induced transparency
with resonant nuclei in a cavity. Nature 482, 199–203 (2012)
29. K.P. Heeg, H.-C. Wille, K. Schlage, T. Guryeva, D. Schumacher, I. Uschmann, K.S. Schulze,
B. Marx, T. Kämpfer, G.G. Paulus, R. Röhlsberger, J. Evers, Vacuum-assisted generation and
control of atomic coherences at x-ray energies. Phys. Rev. Lett. 111, 073601 (2013)
165
4. G.S. Agarwal, Quantum Optics (Cambridge University Press, 2013)
5. S.L. Ruby, Mössbauer experiments without conventional sources. J. Phys. (Paris) Colloq. 35,
C6–209 (1974)
6. R. Röhlsberger, Nuclear Condensed Matter Physics with Synchrotron Radiation. Basic Principles, Methodology and Applications. Number 208 in Springer Tracts in Modern Physics
(Springer, Berlin, Heidelberg, 2004)
7. Kwang-Je Kim, Yuri Shvyd’ko, Sven Reiche, A proposal for an x-ray free-electron laser
oscillator with an energy-recovery linac. Phys. Rev. Lett. 100, 244802 (2008)
8. B.W. Adams et al., Scientific opportunities with an x-ray free-electron laser oscillator.
arXiv:1903.09317 [physics.ins-det] (2019)
9. M.O. Scully, E.S. Fry, C.H. Raymond Ooi, K. Wódkiewicz, Directed spontaneous emission
from an extended ensemble of N atoms: timing is everything. Phys. Rev. Lett. 96, 010501
(2006)
10. J.H. Eberly, Emission of one photon in an electric dipole transition of one among N atoms.
J. Phys. B Atom. Molec. Opt. Phys. 39, S599 (2006)
11. A. Svidzinsky, J.-T. Chang, Cooperative spontaneous emission as a many-body eigenvalue
problem. Phys. Rev. A 77, 043833 (2008)
12. R. Friedberg, J.T. Manassah, Effects of including the counterrotating term and virtual photons
on the eigenfunctions and eigenvalues of a scalar photon collective emission theory. Phys.
Lett. A 372, 2514–2521 (2008)
13. R. Friedberg, J.T. Manassah, Electromagnetic decay modes in a spherical sample of two-level
atoms. Phys. Lett. A 372, 6833–6842 (2008)
14. D. Porras, J.I. Cirac, Collective generation of quantum states of light by entangled atoms.
Phys. Rev. A 78, 053816 (2008)
15. M.O. Scully, A.A. Svidzinsky, The super of superradiance. Science 325, 1510–1511 (2009)
16. M.O. Scully, A.A. Svidzinsky, The effects of the N atom collective Lamb shift on single
photon superradiance. Phys. Lett. A 373, 1283–1286 (2009)
17. L.H. Pedersen, K. Mølmer, Few qubit atom-light interfaces with collective encoding. Phys.
Rev. A 79, 012320 (2009)
18. A.A. Svidzinsky, M.O. Scully, Evolution of collective N atom states in single photon superradiance: effect of virtual Lamb shift processes. Opt. Commun. 282, 2894–2897 (2009)
19. A.A. Svidzinsky, M.O. Scully, On the evolution of N -atom state prepared by absorption of a
single photon. Opt. Commun. 283, 753–757 (2010)
20. R. Friedberg, Refinement of a formula for decay after weak coherent excitation of a sphere.
Annals Phys. 325, 345–358 (2010)
21. A.A. Svidzinsky, J.-T. Chang, M.O. Scully, Cooperative spontaneous emission of n atoms:
many-body eigenstates, the effect of virtual Lamb shift processes, and analogy with radiation
of n classical oscillators. Phys. Rev. A 81, 053821 (2010)
22. P.R. Berman, J.-L. Le Gouët, Phase-matched emission from an optically thin medium following one-photon pulse excitation: Energy considerations. Phys. Rev. A 83, 035804 (2011)
23. A.M. Afanas’ev, Yu. Kagan, Theory of hyperfine structure of the Mössbauer line in paramagnetic substances. Sov. Phys. JETP 18, 1139–1149 (1964)
24. J.P. Hannon, G.T. Trammell, Mössbauer diffraction. I. Quantum theory of gamma-ray and
x-ray optics. Phys. Rev. 169, 315–329 (1968)
25. J.P. Hannon, G.T. Trammell, Mössbauer diffraction. II. Dynamical theory of Mössbauer optics.
Phys. Rev. 186, 306–325 (1969)
26. J.P. Hannon, G.T. Trammell, Coherent γ -ray optics. Hyperfine Interactions 123, 127–274
(1999)
27. R. Röhlsberger, K. Schlage, B. Sahoo, S. Couet, R. Rüffer, Collective Lamb shift in single
photon superradiance. Science 328, 1248 (2010)
28. R. Röhlsberger, H.C. Wille, K. Schlage, B. Sahoo, Electromagnetically induced transparency
with resonant nuclei in a cavity. Nature 482, 199–203 (2012)
29. K.P. Heeg, H.-C. Wille, K. Schlage, T. Guryeva, D. Schumacher, I. Uschmann, K.S. Schulze,
B. Marx, T. Kämpfer, G.G. Paulus, R. Röhlsberger, J. Evers, Vacuum-assisted generation and
control of atomic coherences at x-ray energies. Phys. Rev. Lett. 111, 073601 (2013)
